García-Sevillano M A, García-Barrera T, Navarro F, Abril N, Pueyo C, López-Barea J, Gómez-Ariza J L
Department of Chemistry and Materials Science, Faculty of Experimental Sciences, University of Huelva, Campus de El Carmen, Av. Fuerzas Armadas s/n, 21007 Huelva, Spain; Research Center on Health and Environment (CYSMA), University of Huelva, Huelva, Spain; International Campus of Excellence on Agrofood (ceiA3), University of Huelva, Huelva, Spain.
Department of Chemistry and Materials Science, Faculty of Experimental Sciences, University of Huelva, Campus de El Carmen, Av. Fuerzas Armadas s/n, 21007 Huelva, Spain; Research Center on Health and Environment (CYSMA), University of Huelva, Huelva, Spain; International Campus of Excellence on Agrofood (ceiA3), University of Huelva, Huelva, Spain.
J Chromatogr B Analyt Technol Biomed Life Sci. 2015 Mar 15;985:75-84. doi: 10.1016/j.jchromb.2015.01.029. Epub 2015 Jan 25.
Although mercury (Hg) is an important environmental and occupational pollutant, its toxicological effects, especially in serum and red blood cells (RBCs), have been scarcely studied. A toxicometabolomics workflow based on high resolution mass spectrometry approaches has been applied to investigate the toxicological effects of Hg in Mus musculus mice after subcutaneous injection for 10 days, which produced inflammation and vacuolization, steatosis and karyolysis in the hepatic tissue. To this end, direct infusion mass spectrometry (DIMS) of polar and lipophilic extracts from serum and RBCs, using positive and negative mode of acquisition (ESI+/ESI-), and gas chromatography-mass spectrometry were used. A quantitative analysis of reversible oxidized thiols in serum proteins demonstrated a strong oxidative stress induction in the liver of Hg-exposed mice. Endogenous metabolites alterations were identified by partial least squares-discriminant analysis (PLS-DA). Mercury-exposed mice show perturbations in energy metabolism, amino acid metabolism, membrane phospholipid breakdown and oxidative stress-related metabolites in serum along the exposure. This work reports for the first time the effects of Hg-exposure on RBCs metabolic pathways, and reveals disturbances in glycolysis, membrane turnover, glutathione and ascorbate metabolisms.
尽管汞(Hg)是一种重要的环境和职业污染物,但其毒理学效应,尤其是在血清和红细胞(RBCs)中的效应,鲜有研究。基于高分辨率质谱方法的毒理代谢组学工作流程已被应用于研究皮下注射10天的小家鼠中汞的毒理学效应,该注射导致肝脏组织出现炎症和空泡化、脂肪变性和核溶解。为此,使用了电喷雾离子化正离子/电喷雾离子化负离子(ESI+/ESI-)采集模式对血清和红细胞的极性及亲脂性提取物进行直接进样质谱分析(DIMS),以及气相色谱-质谱联用分析。血清蛋白中可逆氧化硫醇的定量分析表明,汞暴露小鼠的肝脏中存在强烈的氧化应激诱导。通过偏最小二乘判别分析(PLS-DA)确定了内源性代谢物的变化。汞暴露小鼠在暴露过程中血清中的能量代谢、氨基酸代谢、膜磷脂分解和氧化应激相关代谢物出现紊乱。这项工作首次报道了汞暴露对红细胞代谢途径的影响,并揭示了糖酵解、膜更新、谷胱甘肽和抗坏血酸代谢的紊乱。